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A set of concurrently labeled patches participate in a network composed of mutually consistent representations of cortical input.
This Matlab-based Analyze-SPM image viewer allows superimposition of individual SPM maps on individual brain slices or folded, inflated, and flattened representations of cortical surfaces reconstructed by FreeSurfer.
We conclude that the superficial patch system is the physical encoding of self-consistent cortical states, and that a set of concurrently labeled patches participate in a network of mutually consistent representations of cortical input.
With this method, both intensity and continuity information from the entire three-dimensional MR volume in segmentation and deformation procedures to produce representations of cortical thickness, which are calculated as the closest distance from the gray-matter white-matter boundary to the gray-matter white-matter at each vertex on the tessellated surface.
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Hubel and Wiesel [92] showed that our visual system has a multiscale and orientation filtering mechanism referred to as an orientation tuner with columnar representation of cortical cells.
Event-related potential negativity is interpreted as a representation of cortical excitability, facilitating the processing of sensory input, while positivity is a manifestation of neuronal inhibition [3, 4].
Along the horizontal meridian, the retinal representation of cortical cells is largely elevated with respect to other more vertical meridians outside this visual streak.
Inspired by the observation that the lines of gyral crests can form a connected graph on each brain hemisphere, we propose a new representation of cortical gyri/sulci organization pattern – gyral net, which models cortical architecture from a graph perspective, starting with nodes and edges obtained from the reconstructed cortical surfaces.
The initial sphere, therefore, is a Talairach-normalized representation of cortical anatomy.
Then, the representation of cortical activity in the PAG would differ from the PG, as a consequence of a proprioceptive deficit [ 37].
As the auditory cortex eludes an examination with the BAER test, the improved representation of cortical activity evoked by auditory stimuli would be an additional advantage over traditional research methods.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com